翼型
物理
涡流
格子Boltzmann方法
动态模态分解
降噪
旋涡脱落
噪音(视频)
机械
还原(数学)
风洞
后掠翼
NACA翼型
涡流发生器
计算机模拟
经典力学
流动可视化
空气动力学
声学
攻角
计算物理学
数值分析
连贯性(哲学赌博策略)
格子(音乐)
光学
流量(数学)
计算流体力学
直接数值模拟
作者
Wen‐zhi Liang,Peiqing Liu,Jin Zhang,Hao Guo,Luo Dai-he,Qiulin Qu
摘要
This paper investigates the noise reduction mechanism of a three-element airfoil with a swept angle. It analyzes the impact of the swept angle on airfoil noise through numerical simulations validated by wind tunnel experiments. An in-house high-precision numerical scheme based on the lattice Boltzmann method combined with the parallel computing capabilities of graphics processing units is used to directly simulate the unsteady vortices around the airfoil. The study finds that the noise reduction effect of the swept angle is not solely attributed to the decrease in effective incoming flow velocity, the sweepback effect introduces a spanwise phase difference during vortex shedding, which weakens the spanwise coherence of the vortex structures. Meanwhile, the breakdown into smaller vortex structures leads to an increase in broadband noise which compensates exactly the additional reduction of the low frequency spectrum pressure level. Based on the Lamb vector ω×u in the vortex-acoustic theory and combined with the dynamic mode decomposition method, this paper conducts a study on the quantitative relationship between the evolution of vortex morphology and noise changes.
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